Generation of a caged lentiviral vector through an unnatural amino acid for photo-switchable transduction

Author:

Wang Yan12,Li Shuai12,Tian Zhenyu12,Sun Jiaqi12,Liang Shuobin12,Zhang Bo3,Bai Lu12,Zhang Yuanjie12,Zhou Xueying12,Xiao Sulong12ORCID,Zhang Qiang14,Zhang Lihe1,Zhang Chuanling12,Zhou Demin12

Affiliation:

1. State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China

2. Department of Molecular and Cellular Pharmacology, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China

3. Center for Translational Medicine, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100730, China

4. Department of Pharmaceutics, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China

Abstract

Abstract Application of viral vectors in gene delivery is attracting widespread attention but is hampered by the absence of control over transduction, which may lead to non-selective transduction with adverse side effects. To overcome some of these limitations, we proposed an unnatural amino acid aided caging–uncaging strategy for controlling the transduction capability of a viral vector. In this proof-of-principle study, we first expanded the genetic code of the lentiviral vector to incorporate an azido-containing unnatural amino acid (Nϵ-2-azidoethyloxycarbonyl-l-lysine, NAEK) site specifically within a lentiviral envelope protein. Screening of the resultant vectors indicated that NAEK incorporation at Y77 and Y116 was capable of inactivating viral transduction upon click conjugation with a photo-cleavable chemical molecule (T1). Exposure of the chimeric viral vector (Y77-T1) to UVA light subsequently removed the photo-caging group and restored the transduction capability of lentiviral vector both in vitro and in vivo. Our results indicate that the use of the photo-uncage activation procedure can reverse deactivated lentiviral vectors and thus enable regulation of viral transduction in a switchable manner. The methods presented here may be a general approach for generating various switchable vectors that respond to different stimulations and adapt to different viral vectors.

Funder

National Natural Science Foundation of China

Peking University

National Key Research and Development Program of China

Publisher

Oxford University Press (OUP)

Subject

Genetics

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